Dr. Abedallah M. Rababah
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Dr. Abedallah M. Rababah

Professor
Jordan University of Science and Technology, Jordan


Highest Degree
Ph.D. in Applied Mathematics from University of Stuttgart, Germany

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Biography

Dr. Abedallah Rababah holds a position of Professor at Department of Mathematics and Statistics and Department of Computer Science, Jordan University of Science and Technology (JUST), Jordan. He has obtained his Ph.D. in Applied Mathematics-Numerical Analysis, Approximation Theory, and Computer Aided Geometric Design (CAGD) from University of Stuttgart, West Germany in 1992. Previously he was appointed as Teaching Assistant at Department of Mathematics, Yarmouk University, Jordan, Research and Teaching Assistant and Assistant Professor at Mathematics Institute A, University of Stuttgart, West Germany, Assistant Professor at Yarmouk University, Jordan, Assistant Professor at Qatar University, Qatar, Assistant Professor and Associate Professor at Jordan University of Science and Technology and Professor at University of Waterloo, Waterloo, Ontario, Canada. He is member of The German Mathematical Society and The Jordan Mathematical Society. He is also serving as Editor-in-Chief/Associate Editor for Journal of Computer Sciences and member of editorial board in several journals. His main area of research interest focuses on Applied Mathematics-Numerical Analysis, Approximation Theory, Computer Graphics, CAD, and Computer Aided Geometric Design. He has supervised 12 masters’ student’s projects. Dr. Abedallah has published 4 books, 41 research article in peer reviewed international journals and 8 papers in international conferences contributed as author/co-author. He has participated and/or presented talks in number of conferences.

Area of Interest:

Mathematics
100%
Numerical Analysis
62%
Applied Mathematics
90%
Approximation Theory
75%
Computer Aided Design
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
25
Abstracts
0

Selected Publications

  1. Rababah, A., 2016. The best uniform quadratic approximation of circular arcs with high accuracy. Open Math., 14: 118-127.
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  2. Rababah, A. and S. Ibrahim, 2016. Weighted G1-multi-degree reduction of bezier curves. Int. J. Adv. Comput. Sci. Applic., 7: 540-545.
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  3. Rababah, A. and Y.F. Hamza, 2015. Multi-degree reduction of disk Bezier curves with G0- and G1-continuity. J. Inequalities Applic., Vol. 2015. 10.1186/s13660-015-0833-y.
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  4. Rababah, A. and S. Mann, 2013. Linear methods for G1, G2 and G3 multi-degree reduction of bezier curves. Comput. Aided. Des., 45: 405-414.
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  5. Rababah, A. and S. Mann, 2011. Iterative process for G2-multi degree reduction of Bezier curves. Appl. Math. Comput., 217: 8126-8133.
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  6. Rababah, A., 2010. Degree reduction of triangular bezier surfaces with Cα-vertices. Int. J. Math. Anal., 4: 21-24.
  7. Rababah, A., M. Al-Refai and R. Al-Jarrah, 2008. Computing derivatives of jacobi polynomials using bernstein transformation and differentiation matrix. Numer. Funct. Anal. Optim., 29: 660-673.
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  8. Rababah, A., 2008. Bivariate orthogonal polynomials on triangular domains. Math. Comput. Simul., 78: 107-111.
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  9. Rababah, A. and Al-Natour, 2008. Weighted dual functions for Bernstein basis satisfying boundary constraints. Appl. Math. Comput., 199: 456-463.
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  10. Rababah, A., B.G. Lee and J. Yoo, 2007. Multiple degree reduction and elevation of Bezier curves using Jacobi-Bernstein basis transformations. Numer. Funct. Anal. Optim., 28: 1179-1196.
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  11. Rababah, A., 2007. On bounds of the fundamental polynomials associated with the hermite-fejer interpolation on the roots of the jacobi polynomials. Int. J. Math. Anal., 1: 1125-1130.
  12. Rababah, A., 2007. Integration of Jacobi and weighted Bernstein polynomials using bases transformations. Comput. Methods Appl. Math., 7: 221-226.
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  13. Rababah, A., 2007. Inequalities for the jacobi polynomials and their derivatives. Int. J. Pure Appl. Sci., 41: 697-701.
  14. Rababah, A., 2007. High accuracy hermite approximation for space curves in Rd. J. Math. Anal. Applic., 325: 920-931.
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  15. Rababah, A., 2007. Asymptotic properties of the Hermite-Fejer interpolation on the roots of the Legendre polynomials. Int. J. Math. Anal., 1: 1131-1135.
  16. Rababah, A. and M. Al-Natour, 2007. The weighted dual functionals for the univariate Bernstein basis. Appl. Math. Comput., 186: 1581-1590.
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  17. Rababah, A., B.G. Lee and J. Yoo, 2006. A simple matrix form for degree reduction of Bezier curves using Chebyshev-Bernstein basis transformations. Appl. Math. Comput., 181: 310-318.
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  18. Rababah, A. and A. Taani, 2006. Cardinal interpolation problem for shifted E-spline. Abhath Al- Yarmouk Basic Sci. Eng., 15: 91-100.
  19. Rababah, A., 2005. L-2 degree reduction of triangular Bezier surfaces with common tangent planes at vertices. Int. J. Comput. Geom. Applic., 15: 477-490.
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  20. Rababah, A., 2005. Distances with rational triangular Bezier surfaces. Appl. Math. Comput., 160: 379-386.
  21. Rababah, A. and M. Alqudah, 2005. Jacobi-weighted orthogonal polynomials on triangular domains. J. Appl. Math., 2005: 205-217.
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  22. Rababah, A., 2004. Jacobi-Bernstein basis transformation. Comput. Methods Appl. Math., 4: 206-214.
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  23. Rababah, A., 2004. Fractional partial derivatives of bivariate Bernstein polynomials. Int. J. Comput. Numer. Anal. Applic., 6: 385-390.
  24. Rababah, A., 2003. Transformation of Chebyshev-Bernstein polynomial basis. Comput. Methods Appl. Math., 3: 608-622.
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  25. Rababah, A., 2003. Distance for degree raising and reduction of triangular Bezier surfaces. J. Comput. Appl. Math., 158: 233-241.
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